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Current profile modification during lower hybrid current drive in the Princeton Beta Experiment-Modification

R. Kaita, S.H. Batha, R.E. Bell, S. Bernabei, S.P. Hirshman, D.W. Ignat, S.C. Jardin, S.E. Jones, S.M. Kaye, J. Kesner1996年被引用 6Nuclear FusionIF 3出版社

The physics of current profile modification with lower hybrid waves has been investigated in the Princeton Beta Experiment-Modification tokamak by comparing experimental internal magnetic field profiles with ray tracing code predictions. When the n| spectrum of the launched waves was varied, local changes in the current profile were observed according to equilibria, reconstructed from motional Stark effect polarimetry measurements. Changes in the central safety factor (q) were also determined to be a function of the applied radiofrequency (RF) power. Calculations of the non-inductive current with the Tokamak Simulation Code/Lower Hybrid Simulation Code were unable to duplicate the measured current profiles. Instead, a current broadening mechanism like a finite fast electron diffusion coefficient had to be hypothesized to fit the data. This study was possible only with recent improvements in diagnostics and numerical analysis tools, and it constitutes an important contribution to our understanding of non-inductive current drive for future fusion reactors

日本語訳

低混成波による電流分布の修正の物理が、Princeton Beta Experiment-Modificationトカマクにおいて、実験的な内部磁場分布と光線追跡コードの予測を比較することにより調査された。入射波のn‖スペクトルが変化されたとき、運動Stark効果偏光測定から再構成された平衡に従って、電流分布の局所的な変化が観測された。中心安全係数(q)の変化も、印加された高周波(RF)パワーの関数として決定された。Tokamak Simulation Code/Lower Hybrid Simulation Codeによる非誘導電流の計算は、測定された電流分布を再現することができなかった。その代わりに、有限の高速電子拡散係数のような電流拡大機構が、データに適合させるために仮定されなければならなかった。この研究は、診断および数値解析ツールの最近の改良によってのみ可能となり、将来の核融合炉における非誘導電流駆動の理解に対する重要な貢献を構成するものである。

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Current driveLower hybridLower hybrid current driveCurrent profile
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